Area of research
Biomedical Engineering · Parasitology
Research interest
Research focused on Graphene and Carbon nanotube, with related work in Toxoplasma gondii, Toxoplasmosis, Carbon black. Notable publications include 'Modified Micro‐Emulsion Synthesis of Highly Dispersed Al/PVDF Composites with Enhanced Combustion Properties', 'Enhancing the Performance of Motive Power Lead-Acid Batteries by High Surface Area Carbon Black Additives', and 'One-Step Chemical Vapor Deposition Synthesis of 3D N-doped Carbon Nanotube/N-doped Graphene Hybrid Material on Nickel Foam'.
In vitro Anti-parasitic Activity of Pelargonium X. asperum Essential Oil Against Toxoplasma gondii
In Vitro Evaluation of Lavandula angustifolia Essential Oil on Anti-Toxoplasma Activity
Evaluation of Origanum vulgare Essential Oil and Its Active Ingredients as Potential Drugs for the Treatment of Toxoplasmosis
Facile one-step synthesis of N-doped carbon nanotubes/N-doped carbon nanofibers hierarchical composites by chemical vapor deposition
Modified Micro‐Emulsion Synthesis of Highly Dispersed Al/PVDF Composites with Enhanced Combustion Properties
Enhancing the Performance of Motive Power Lead-Acid Batteries by High Surface Area Carbon Black Additives
Manipulation of 3D nanocarbon hybrids toward synthesis of N-doped graphene quantum dots with high photoluminescence quantum yield
A N-doped graphene–cobalt nickel sulfide aerogel as a sulfur host for lithium–sulfur batteries
Growth of U-Shaped Graphene Domains on Copper Foil by Chemical Vapor Deposition
One-Step Chemical Vapor Deposition Synthesis of 3D N-doped Carbon Nanotube/N-doped Graphene Hybrid Material on Nickel Foam
One-step synthesis of hierarchical metal oxide nanosheet/carbon nanotube composites by chemical vapor deposition
Enhanced Performance of E-Bike Motive Power Lead–Acid Batteries with Graphene as an Additive to the Active Mass